Exploring high-frequency waves and soliton solutions of fluid turbulence through relaxation medium modeled by vakhnenko-parkes equation

Faculty Engineering Year: 2024
Type of Publication: ZU Hosted Pages:
Authors:
Journal: Computational Methods for Differential Equations University of Tabriz Volume:
Keywords : Exploring high-frequency waves , soliton solutions , fluid    
Abstract:
One of the most important natural phenomena that has been studied extensively in engineering, oceanography, meteorology and other fields is called fluid turbulence (FT). FT stands for irregular flow of fluid. Scientists detected models to describe this phenomenon, among these models is the (3+1)-dimensional Vakhnenko-Parkes (VP) equation. In this research, the high-frequency waves’ dynamical behavior through the relaxation medium is explored considering two semi-analytic methods, the (G^'/G) and the tanh-coth (TC) expansion methods. Nineteen different solutions have been detected and some of these solutions have been illustrated graphically. Figures show a range of degenerate, periodic, and complex propagating soliton wave solutions
   
     
 
       

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